Genetic and Genomic Testing for Prostate Cancer: Beyond DNA Repair
Cameron Herberts1, Alexander W Wyatt1,2, Paul L Nguyen3
1Vancouver Prostate Centre, University of British Columbia, Vancouver, British Columbia, Canada.
Abstract:
Significant progress has been made in genetic and genomic testing for prostate cancer across the disease spectrum. Molecular profiling is increasingly relevant for routine clinical management, fueled in part by advancements in testing technology and integration of biomarkers into clinical trials. In metastatic prostate cancer, defects in DNA damage response genes are now established predictors of benefit to US Food and Drug Administration-approved poly (ADP-ribose) polymerase inhibitors and immune checkpoint inhibitors, and trials are actively investigating these and other targeted treatment strategies in earlier disease states. Excitingly, opportunities for molecularly informed management beyond DNA damage response genes are also maturing. Germline genetic variants (eg, BRCA2 or MSH2/6) and polygenic germline risk scores are being investigated to inform cancer screening and active surveillance in at-risk carriers. RNA expression tests have recently gained traction in localized prostate cancer, enabling patient risk stratification and tailored treatment intensification via radiotherapy and/or androgen deprivation therapy for localized or salvage treatment. Finally, emerging minimally invasive circulating tumor DNA technology promises to enhance biomarker testing in advanced disease pending additional methodological and clinical validation. Collectively, genetic and genomic tests are rapidly becoming indispensable tools for informing the optimal clinical management of prostate cancer.
Insights
Genetic and genomic testing is revolutionizing prostate cancer care. Biomarkers now guide treatment for metastatic disease and risk stratification for localized prostate cancer, improving patient outcomes.
Area of Science:
- Oncology
- Genetics
- Genomics
Background:
- Genetic and genomic testing for prostate cancer has advanced significantly across all disease stages.
- Molecular profiling is crucial for clinical management, driven by technological progress and biomarker integration into trials.
Purpose of the Study:
- To review the current state and future directions of genetic and genomic testing in prostate cancer management.
- To highlight the role of molecular profiling in guiding treatment decisions and risk stratification.
Main Methods:
- Review of current literature on genetic and genomic testing in prostate cancer.
- Discussion of established and emerging biomarkers and testing technologies.
- Analysis of clinical trial data and regulatory approvals.
Main Results:
- Defects in DNA damage response genes predict benefit from PARP inhibitors and immune checkpoint inhibitors in metastatic prostate cancer.
- RNA expression tests aid risk stratification and treatment intensification in localized prostate cancer.
- Germline variants and polygenic risk scores are being explored for screening and surveillance.
- Circulating tumor DNA (ctDNA) shows promise for advanced disease biomarker testing.
Conclusions:
- Genetic and genomic tests are essential for optimizing prostate cancer management.
- Molecularly informed strategies extend beyond DNA damage response genes.
- Emerging technologies like ctDNA will further enhance biomarker testing.
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